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PMID: 42612849 已发表 · aheadofprint 英语

Platelet-derived nanovesicle-LNP hybrid delivering collagen III mRNA for skin rejuvenation.

International journal of pharmaceutics ·第 703 卷 ·2026-08-18

Xue W, Wang M, Jiang Y, Luo J, Liu J, Shi S, Yin X, Li X

摘要

Skin photoaging caused by chronic UV radiation usually leads to extracellular matrix (ECM) degradation and a persistent pro-inflammatory microenvironment. Although lipid nanoparticles (LNPs) have been reported to deliver collagen mRNA to treat photoaged skin, their clinical translation remains severely limited due to lipid-induced inflammation and other side effects. To overcome this limitation, we developed a biomimetic platelet-derived nanovesicle (PNV)-lipid nanoparticle hybrid (PLH) to deliver collagen III mRNA (COL3A1) for skin rejuvenation. This hybrid loaded with COL3A1 (C3-PLH) was found to have enhanced uptake by damaged fibroblasts through surface-displayed CD62P protein. In vivo delivery tests showed that C3-PLH show a 3.1-fold higher skin retention and extend protein expression to 36 h without leaking into the liver. In a UVB-induced photoaging mouse model, C3-PLH treatment drove robust in situ collagen expression and achieved a remarkable 86.5% reduction in wrinkle area on day 21, compared to only a 25.8% reduction for conventional C3-LNP. Importantly, C3-PLH actively cleared harmful reactive oxygen species (ROS), reduced inflammation by promoting M2 macrophage polarization, and enhanced blood vessel growth. This synergistic dual-action strategy activated the TGF-β1/Smad-3 pathway while blocking the collagen-destroying enzyme MMP-9, successfully rebuilding a youth-associated skin architecture by lowering the dermal COL1A1/COL3A1 ratio to 2.2. Consequently, this platelet-derived nanovesicle/LNP hybrid offers a highly effective, safe, and microenvironment-reprogramming biomimetic strategy for advanced skin rejuvenation.

关键词
Biomimetic delivery system Collagen restoration Skin retention mRNA therapeutics
文献信息
期刊
International journal of pharmaceutics
期刊简称
Int J Pharm
ISSN
1873-3476
发表日期
2026-08-18
语言
英语
国家/地区
Netherlands
NLM ID
7804127
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